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Environment International | 2009

Non-invasive matrices in human biomonitoring: a review.

Marta Esteban; Argelia Castaño

Humans and other living organisms are exposed to a variety of chemical pollutants that are released into the environment as a consequence of anthropogenic activities. Environmental pollutants are incorporated into the organism by different routes and can then be stored and distributed in different tissues, which leads to an internal concentration that can induce different alterations, adverse effects and/or diseases. Control measures should be taken to avoid these effects and human biomonitoring is a very useful tool that can contribute to this aim. Human biomonitoring uses different matrices to measure the target chemicals depending on the chemical, the amount of matrix necessary for the analysis and the detection limit (LOD) of the analytical technique. Blood is the ideal matrix for most chemicals due to its contact with the whole organism and its equilibrium with organs and tissues where chemicals are stored. However, it has an important disadvantage of being an invasive matrix. The development of new methodology and modern analytical techniques has allowed the use of other matrices that are less or non-invasive, such as saliva, urine, meconium, nails, hair, and semen or breast milk. The presence of a chemical in these matrices reflects an exposure, but correlations between levels in non-invasive matrices and blood must be established to ensure that these levels are related to the total body burden. The development of new biomarkers that are measurable in these matrices will improve non-invasive biomonitoring. This paper reviews studies that measure Cd, Pb, Hg, polychlorinated biphenyls (PCBs), polychlorinated dibenzo-p-dioxins (PCDDs), polychlorinated dibenzofurans (PCDFs), polycyclic aromatic hydrocarbons (PAHs), polybrominated diphenyl ethers (PBDEs), organochlorine pesticides and phthalates in non-invasive matrices, the most used techniques for measurements and what alternative techniques are available.


Chemosphere | 1996

Correlations between the RTG-2 cytotoxicity test EC50 and in vivo LC50 rainbow trout bioassay

Argelia Castaño; M.J. Cantarino; P. Castillo; Jose Tarazona

Abstract This paper presents data on the validation of the RTG-2 in vitro cytotoxicity test. Correlations between in vivo 96h LC50s on rainbow trout and in vitro EC50s obtained with this test, were established. The acute cytotoxicity of 16 common aquatic pollutants were determined in vitro on RTG-2 cells, an established fibroblastic-like cell line derived from rainbow trout, using three quantitative analyses, as toxicological endpoints, on the same cell microplate: intracellular ATP content; cellular viability using neutral red assay (NR), and detachment of the grown surface substratum using FRAME KB protein assay (KBP). The three values obtained, were also transformed by a cytotoxicity index (CI), in a singular value of cytotoxicity. Dose-response curves were obtained. Good correlations between in vivo LC50s and in vitro EC50s for each endpoint and for the cytotoxicity index (CI) were found. Correlation coefficients were 0.965, 0.968, 0.977 and 0.970 for ATP, NR, KBP and CI50 respectively. Results indicate the applicability of the RTG-2 test as alternative protocol to estimate the acute toxicity of chemicals on fish without using live animals. The inclusion of this test instead of standard toxicity tests on fish would provide a fully alternative system, without testing on vertebrate animals, for the classification and preliminary risk assessment of the environmental hazard of substances.


Environmental Health Perspectives | 2014

First steps toward harmonized human biomonitoring in Europe: demonstration project to perform human biomonitoring on a European scale.

Elly Den Hond; Eva Govarts; Hanny Willems; Roel Smolders; Ludwine Casteleyn; Marike Kolossa-Gehring; Gerda Schwedler; Margarete Seiwert; Ulrike Fiddicke; Argelia Castaño; Marta Esteban; Jürgen Angerer; Holger M. Koch; Birgit K. Schindler; Ovnair Sepai; Karen Exley; Louis Bloemen; Milena Horvat; Lisbeth E. Knudsen; Anke Joas; Reinhard Joas; Pierre Biot; Dominique Aerts; Gudrun Koppen; Andromachi Katsonouri; Adamos Hadjipanayis; Andrea Krsková; Marek Maly; Thit A. Mørck; Peter Rudnai

Background For Europe as a whole, data on internal exposure to environmental chemicals do not yet exist. Characterization of the internal individual chemical environment is expected to enhance understanding of the environmental threats to health. Objectives We developed and applied a harmonized protocol to collect comparable human biomonitoring data all over Europe. Methods In 17 European countries, we measured mercury in hair and cotinine, phthalate metabolites, and cadmium in urine of 1,844 children (5–11 years of age) and their mothers. Specimens were collected over a 5-month period in 2011–2012. We obtained information on personal characteristics, environment, and lifestyle. We used the resulting database to compare concentrations of exposure biomarkers within Europe, to identify determinants of exposure, and to compare exposure biomarkers with health-based guidelines. Results Biomarker concentrations showed a wide variability in the European population. However, levels in children and mothers were highly correlated. Most biomarker concentrations were below the health-based guidance values. Conclusions We have taken the first steps to assess personal chemical exposures in Europe as a whole. Key success factors were the harmonized protocol development, intensive training and capacity building for field work, chemical analysis and communication, as well as stringent quality control programs for chemical and data analysis. Our project demonstrates the feasibility of a Europe-wide human biomonitoring framework to support the decision-making process of environmental measures to protect public health. Citation Den Hond E, Govarts E, Willems H, Smolders R, Casteleyn L, Kolossa-Gehring M, Schwedler G, Seiwert M, Fiddicke U, Castaño A, Esteban M, Angerer J, Koch HM, Schindler BK, Sepai O, Exley K, Bloemen L, Horvat M, Knudsen LE, Joas A, Joas R, Biot P, Aerts D, Koppen G, Katsonouri A, Hadjipanayis A, Krskova A, Maly M, Mørck TA, Rudnai P, Kozepesy S, Mulcahy M, Mannion R, Gutleb AC, Fischer ME, Ligocka D, Jakubowski M, Reis MF, Namorado S, Gurzau AE, Lupsa IR, Halzlova K, Jajcaj M, Mazej D, Snoj Tratnik J, López A, Lopez E, Berglund M, Larsson K, Lehmann A, Crettaz P, Schoeters G. 2015. First steps toward harmonized human biomonitoring in Europe: demonstration project to perform human biomonitoring on a European scale. Environ Health Perspect 123:255–263; http://dx.doi.org/10.1289/ehp.1408616


International Journal of Hygiene and Environmental Health | 2012

Mercury, lead and cadmium levels in the urine of 170 Spanish adults: a pilot human biomonitoring study.

Argelia Castaño; Jinny E. Sánchez-Rodríguez; Ana Cañas; Marta Esteban; Carmen Navarro; Ana C. Rodríguez-García; Misericordia Arribas; Gema Díaz; José A. Jiménez-Guerrero

Human biomonitoring is a well-recognized tool for estimating the exposure of human populations to environmental pollutants. However, information regarding biomarker concentrations of many environmental chemicals in the general population is limited for many countries. The Spanish Environment Ministry has recently funded a human biomonitoring study on the Spanish general population. This study aims to determine reference levels for several biomarkers, especially heavy metals, persistent organic pollutants (POPs) and cotinine, in urine, whole blood, serum and hair, and will involve 2000 volunteers throughout Spain. Samples were taken during 2009-2010 and analyses are currently underway. The results presented herein were obtained in a pilot study carried out in the Madrid region. The study group comprised 170 volunteers, of which 79% were female and 21% male (age: 23-66 years). All participants were asked to complete a questionnaire regarding diet and living habits and provides a morning urine sample. The geometric means for total mercury (Hg), lead (Pb) and cadmium (Cd) were 1.23, 1.11 and 0.25 μg/g creatinine, respectively. Levels of Pb and Hg were higher than those reported for the general population in the USA and Germany, whereas Cd was in the same range (CDC, 2009; Becker et al., 2003). The values reported here are similar to those reported in other Spanish studies.


Environmental Research | 2015

Fish consumption patterns and hair mercury levels in children and their mothers in 17 EU countries

Argelia Castaño; Francisco Cutanda; Marta Esteban; Peter Pärt; Carmen Navarro; Silvia Gómez; Montserrat Rosado; Ana López; Estrella Lopez; Karen Exley; Birgit K. Schindler; Eva Govarts; Ludwine Casteleyn; Marike Kolossa-Gehring; Ulrike Fiddicke; Holger M. Koch; Jürgen Angerer; Elly Den Hond; Greet Schoeters; Ovnair Sepai; Milena Horvat; Lisbeth E. Knudsen; Dominique Aerts; Anke Joas; Pierre Biot; Reinhard Joas; José A. Jiménez-Guerrero; Gema Díaz; Catherine Pirard; Andromachi Katsonouri

The toxicity of methylmercury (MeHg) in humans is well established and the main source of exposure is via the consumption of large marine fish and mammals. Of particular concern are the potential neurodevelopmental effects of early life exposure to low-levels of MeHg. Therefore, it is important that pregnant women, children and women of childbearing age are, as far as possible, protected from MeHg exposure. Within the European project DEMOCOPHES, we have analyzed mercury (Hg) in hair in 1799 mother-child pairs from 17 European countries using a strictly harmonized protocol for mercury analysis. Parallel, harmonized questionnaires on dietary habits provided information on consumption patterns of fish and marine products. After hierarchical cluster analysis of consumption habits of the mother-child pairs, the DEMOCOPHES cohort can be classified into two branches of approximately similar size: one with high fish consumption (H) and another with low consumption (L). All countries have representatives in both branches, but Belgium, Denmark, Spain, Portugal and Sweden have twice as many or more mother-child pairs in H than in L. For Switzerland, Czech Republic, Hungary, Poland, Romania, Slovenia and Slovakia the situation is the opposite, with more representatives in L than H. There is a strong correlation (r=0.72) in hair mercury concentration between the mother and child in the same family, which indicates that they have a similar exposure situation. The clustering of mother-child pairs on basis of their fish consumption revealed some interesting patterns. One is that for the same sea fish consumption, other food items of marine origin, like seafood products or shellfish, contribute significantly to the mercury levels in hair. We conclude that additional studies are needed to assess and quantify exposure to mercury from seafood products, in particular. The cluster analysis also showed that 95% of mothers who consume once per week fish only, and no other marine products, have mercury levels 0.55 μg/g. Thus, the 95th percentile of the distribution in this group is only around half the US-EPA recommended threshold of 1 μg/g mercury in hair. Consumption of freshwater fish played a minor role in contributing to mercury exposure in the studied cohort. The DEMOCOPHES data shows that there are significant differences in MeHg exposure across the EU and that exposure is highly correlated with consumption of fish and marine products. Fish and marine products are key components of a healthy human diet and are important both traditionally and culturally in many parts of Europe. Therefore, the communication of the potential risks of mercury exposure needs to be carefully balanced to take into account traditional and cultural values as well as the potential health benefits from fish consumption. European harmonized human biomonitoring programs provide an additional dimension to national HMB programs and can assist national authorities to tailor mitigation and adaptation strategies (dietary advice, risk communication, etc.) to their countrys specific requirements.


International Journal of Hygiene and Environmental Health | 2014

A systematic approach for designing a HBM Pilot Study for Europe

Kerstin Becker; Margarete Seiwert; Ludwine Casteleyn; Reinhard Joas; Anke Joas; Pierre Biot; Dominique Aerts; Argelia Castaño; Marta Esteban; Jürgen Angerer; Holger M. Koch; Greet Schoeters; Elly Den Hond; Ovnair Sepai; Karen Exley; Lisbeth E. Knudsen; Milena Horvat; Louis Bloemen; Marike Kolossa-Gehring

The objective of COPHES (Consortium to Perform Human biomonitoring on a European Scale) was to develop a harmonised approach to conduct human biomonitoring on a European scale. COPHES developed a systematic approach for designing and conducting a pilot study for an EU-wide cross-sectional human biomonitoring (HBM) study and for the implementation of the fieldwork procedures. The approach gave the basis for discussion of the main aspects of study design and conduct, and provided a decision making tool which can be applied to many other studies. Each decision that had to be taken was listed in a table of options with their advantages and disadvantages. Based on this the rationale of the decisions could be explained and be transparent. This was important because an EU-wide HBM study demands openness of all decisions taken to encourage as many countries as possible to participate and accept the initiative undertaken. Based on this approach the following study design was suggested: a cross-sectional study including 120 children aged 6-11 years and their mothers aged up to 45 years from each participating country. For the pilot study the children should be sampled in equal shares in an urban and a rural location. Only healthy children and mothers (no metabolic disturbances) should be included, who have a sufficient knowledge of the local language and have been living at least for 5 years at the sampling location. Occupational exposure should not be an exclusion criterion. Recruitment should be performed via inhabitant registries or schools as an alternative option. Measures suitable to increase the response rate should be applied. Preferably, the families should be visited at home and interviewed face-to-face. Various quality control measures to guarantee a good fieldwork performance were recommended. This comprehensive overview aims to provide scientists, EU officials, partners and stakeholders involved in the EU implementation process full transparency of the work carried out in COPHES. Thus this report presents the discussion and consensus in COPHES on the main aspects of designing and conducting fieldwork of a human biomonitoring study. Furthermore, it provides an example for a systematic approach that may be useful to other research groups or pan-European research initiatives. In the study protocol that will be published elsewhere these aspects are elaborated and additional aspects are covered (Casteleyn et al., 2012). Meanwhile the respective pilot study DEMOCOPHES had been conducted and assessed. The results and lessons learned will be published elsewhere.


Environmental Science and Pollution Research | 2013

Seasonal variation of pharmaceutically active compounds in surface (Tagus River) and tap water (Central Spain)

Y. Valcárcel; S. González Alonso; José Luis Rodríguez-Gil; Argelia Castaño; J.C. Montero; J. J. Criado-Alvarez; I. J. Mirón; Myriam Catalá

Numerous studies have shown the presence of pharmaceutically active compounds (PhACs) in different environmental compartments, for example, in surface water or wastewater ranging from nanograms per litre to micrograms per litre. Likewise, some recent studies have pointed to seasonal variability, thus indicating that PhAcs concentrations in the aquatic environment may depend on the time of year. This work intended to find out (1) whether Tagus fluvial and drinking water were polluted with different groups of PhACs and (2) if their concentrations differed between winter and summer seasons. From the 58 substances analysed, 41 were found belonging to the main therapeutic groups. Statistical differences were seen for antibacterials, antidepressants, anxiolytics, antiepileptics, and cardiovascular drugs, with higher concentrations being detected in winter than in summer. These results might indicate that the PhACs analysed in this study undergo lower environmental degradation in winter than in summer. In order to confirm these initial results, a continuous monitoring should be performed especially on those PhACs that either because of an elevated consumption or an intrinsic chemical persistence are poorly degraded during winter months due to low temperatures and solar irradiation. It is especially important to identify which of these specific PhACs are in order to recommend their substitution by equally effective and safe substances but also environmentally friendly.


Science of The Total Environment | 2014

Hair mercury and urinary cadmium levels in Belgian children and their mothers within the framework of the COPHES/DEMOCOPHES projects

Catherine Pirard; Gudrun Koppen; Koen De Cremer; Ilse Van Overmeire; Eva Govarts; Marie-Christine Dewolf; Els Van de Mieroop; Dominique Aerts; Pierre Biot; Ludwine Casteleyn; Marike Kolossa-Gehring; Gerda Schwedler; Jürgen Angerer; Holger M. Koch; Birgit K. Schindler; Argelia Castaño; Marta Esteban; Greet Schoeters; Elly Den Hond; Ovnair Sepai; Karen Exley; Milena Horvat; Louis Bloemen; Lisbeth E. Knudsen; Reinhard Joas; Anke Joas; Joris Van Loco; Corinne Charlier

A harmonized human biomonitoring pilot study was set up within the frame of the European projects DEMOCOPHES and COPHES. In 17 European countries, biomarkers of some environmental pollutants, including urinary cadmium and hair mercury, were measured in children and their mothers in order to obtain European-wide comparison values on these chemicals. The Belgian participant population consisted in 129 school children (6-11 years) and their mothers (≤ 45 years) living in urban or rural areas of Belgium. The geometric mean levels for mercury in hair were 0.383 μg/g and 0.204 μg/g for respectively mothers and children. Cadmium in mothers and childrens urine was detected at a geometric mean concentration of respectively 0.21 and 0.04 μg/l. For both biomarkers, levels measured in the mothers and their child were correlated. While the urinary cadmium levels increased with age, no trend was found for hair mercury content, except the fact that mothers hold higher levels than children. The hair mercury content increased significantly with the number of dental amalgam fillings, explaining partially the higher levels in the mothers by their higher presence rate of these amalgams compared to children. Fish or seafood consumption was the other main parameter determining the mercury levels in hair. No relationship was found between smoking status and cadmium or mercury levels, but the studied population included very few smokers. Urinary cadmium levels were higher in both mothers and children living in urban areas, while for mercury this difference was only significant for children. Our small population showed urinary cadmium and hair mercury levels lower than the health based guidelines suggested by the WHO or the JECFA (Joint FAO/WHO Expert Committee on Food Additives). Only 1% had cadmium level slightly higher than the German HBM-I value (1 μg/l for adults), and 9% exceeded the 1 μg mercury/g hair suggested by the US EPA.


International Journal of Hygiene and Environmental Health | 2015

Urinary levels of eight phthalate metabolites and bisphenol A in mother–child pairs from two Spanish locations

Francisco Cutanda; Holger M. Koch; Marta Esteban; Jinny Sánchez; Jürgen Angerer; Argelia Castaño

Exposure to some phthalate diesters and bisphenol A in the general population is a cause of increasing concern because of their potential adverse effects on the reproductive and endocrine systems and their broad presence in foodstuff and consumer products. The aims of this work are to assess patterns of exposure to phthalates and bisphenol A in a pilot sample of Spanish mothers and their children, and to provide basic information to address priorities in future Spanish surveys/research. Urinary levels of eight phthalate metabolites and bisphenol A have been measured in samples from 120 mother-child pairs in one rural and one urban location in central Spain, recruited as part of the European project DEMOCOPHES. More than 96% of the participants were exposed to all the compounds studied here with generally higher levels in children than their mothers. The sum of secondary DEHP metabolites gave a GM of 33.3μg/g creatinine (95% CI 30.2-36.6) for mothers and 63.0μg/g creatinine (95% CI 56.8-69.8) for children. Mono-ethyl phthalate (MEP) was the metabolite with the highest levels, with geometric means (GM) of 150.8μg/g creatinine (95% CI 124.0-183.5) for mothers and 198.9μg/g creatinine (95% CI 165.2-239.6) for children. Bisphenol A urinary levels were relatively low with geometric means of 2.0μg/g (95% CI 1.6-2.4) for mothers and 2.01μg/g (95% CI 1.7-2.4) for children. Personal care products like body lotions and fragrances showed associations with MEHP, MEP, MnBP and cx-MiNP and canteen food with MBzP and bisphenol A. Exposure of mothers and their children are correlated, except for MEP. As phthalates and bisphenol A are non-persistent chemicals, a daily, intermittent exposure of the population is taking place.


Environmental Research | 2015

Mercury analysis in hair: Comparability and quality assessment within the transnational COPHES/DEMOCOPHES project

Marta Esteban; Birgit K. Schindler; José Antonio Quintano Jiménez; Holger M. Koch; Juergen Angerer; Montserrat Rosado; Silvia Gómez; Ludwine Casteleyn; Marike Kolossa-Gehring; Kerstin Becker; Louis Bloemen; Greet Schoeters; Elly Den Hond; Ovnair Sepai; Karen Exley; Milena Horvat; Lisbeth E. Knudsen; Anke Joas; Reinhard Joas; Dominique Aerts; Pierre Biot; Daniela Borosova; Fred Davidson; Irina Dumitrascu; Marc E. Fischer; Margaretha Grandér; Beata Janasik; Kate Jones; Lucie Kasparova; Thorjørn Larssen

Human biomonitoring (HBM) is an effective tool for assessing actual exposure to chemicals that takes into account all routes of intake. Although hair analysis is considered to be an optimal biomarker for assessing mercury exposure, the lack of harmonization as regards sampling and analytical procedures has often limited the comparison of data at national and international level. The European-funded projects COPHES and DEMOCOPHES developed and tested a harmonized European approach to Human Biomonitoring in response to the European Environment and Health Action Plan. Herein we describe the quality assurance program (QAP) for assessing mercury levels in hair samples from more than 1800 mother-child pairs recruited in 17 European countries. To ensure the comparability of the results, standard operating procedures (SOPs) for sampling and for mercury analysis were drafted and distributed to participating laboratories. Training sessions were organized for field workers and four external quality-assessment exercises (ICI/EQUAS), followed by the corresponding web conferences, were organized between March 2011 and February 2012. ICI/EQUAS used native hair samples at two mercury concentration ranges (0.20-0.71 and 0.80-1.63) per exercise. The results revealed relative standard deviations of 7.87-13.55% and 4.04-11.31% for the low and high mercury concentration ranges, respectively. A total of 16 out of 18 participating laboratories the QAP requirements and were allowed to analyze samples from the DEMOCOPHES pilot study. Web conferences after each ICI/EQUAS revealed this to be a new and effective tool for improving analytical performance and increasing capacity building. The procedure developed and tested in COPHES/DEMOCOPHES would be optimal for application on a global scale as regards implementation of the Minamata Convention on Mercury.

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Marta Esteban

Instituto de Salud Carlos III

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Greet Schoeters

Flemish Institute for Technological Research

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Ludwine Casteleyn

Katholieke Universiteit Leuven

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Holger M. Koch

University of Erlangen-Nuremberg

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Elly Den Hond

Flemish Institute for Technological Research

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Milena Horvat

International Atomic Energy Agency

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